Access to cyclohexadiene and benzofuran derivatives via catalytic arene cyclopropanation of α-cyanodiazocarbonyl compounds†

IF 2.9 3区 化学 Q1 CHEMISTRY, ORGANIC Organic & Biomolecular Chemistry Pub Date : 2024-06-12 DOI:10.1039/D4OB00696H
Mei-Lin Chen, Chi-wen Chou, Jia-Liang Zhu and Ming-Hsuan Tsai
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Abstract

The arene cyclopropanation between diazo compounds and benzene is well known to produce a tautomeric mixture of norcaradiene and cycloheptatriene in favour of the latter species. Nevertheless, previous studies have suggested that the initially formed norcaradiene can be stabilized by a C-7 cyano group with prevention of its 6π-electrocyclic ring opening. According to this feature, a synthetic route to functionalized cyclohexadienes has been designed using α-cyanodiazoacetates and α-diazo-β-ketonitriles as the starting materials, respectively. The Rh2(esp)2-catalyzed arene cyclopropanation of α-cyanodiazoacetates in benzene afforded the expected 7-alkoxycarbonyl-7-cyanonorcaradienes as isolable compounds, which then served as templates for the second cyclopropanation with ethyl diazoacetate or α-cyanodiazocarbonyls to enable the formation of bis(cyclopropanated) adducts. Their subsequent treatment with SmI2 triggered a double ring-opening process, allowing for the generation of 1,4- and/or 1,3-cyclohexadienes as either regio- or diastereomeric mixtures. On the other hand, the norcaradienes generated from phenyl- or methyl-substituted α-diazo-β-ketonitriles were found to undergo an in situ rearrangement to yield dihydrobenzofurans that could be converted to benzofuran derivatives by DDQ oxidation.

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通过催化α-氰基二氮羰基化合物的炔环丙烷化反应获得环己二烯和苯并呋喃衍生物。
众所周知,重氮化合物与苯之间的炔环丙烷化反应会产生壬二烯和环庚三烯的同分异构体混合物,而后者更受青睐。不过,以往的研究表明,最初形成的壬二醛可以通过 C-7 氰基得到稳定,从而防止其 6π 电环开环。根据这一特点,我们设计了一条分别以 α-氰基二偶氮乙酸酯和 α-重氮-β-酮腈为起始原料的功能化环己二烯合成路线。Rh2(esp)2催化的α-氰基二偶氮乙酸酯在苯中的炔环丙烷化反应生成了预期的 7-烷氧基羰基-7-氰基碳二烯分离化合物,然后将其作为模板与重氮乙酸乙酯或α-氰基二偶氮羰基进行第二次环丙烷化反应,形成双(环丙烷化)加合物。随后用 SmI2 对其进行处理,会引发双环开环过程,从而生成 1,4-和/或 1,3-环己二烯的对映或非对映混合物。另一方面,由苯基或甲基取代的 α-重氮-β-酮腈生成的壬卡二烯会发生原位重排,生成二氢苯并呋喃,并可通过 DDQ 氧化转化为苯并呋喃衍生物。
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来源期刊
Organic & Biomolecular Chemistry
Organic & Biomolecular Chemistry 化学-有机化学
CiteScore
5.50
自引率
9.40%
发文量
1056
审稿时长
1.3 months
期刊介绍: The international home of synthetic, physical and biomolecular organic chemistry.
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